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Experimental Studies of NO_x Emissions in Sequential Fuel Combustion with a Diffusion Second Zone

机译:具有扩散第二区的顺序燃料燃烧中NO_x排放的实验研究

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摘要

This is the third paper on experimental research and optimization of combustion in the fuel-air mixture in the two-zone combustor at outlet gas temperatures of 1550–1700°C with meeting the requirements for harmful substances (NO~( x )and CO) emissions. The experimental results on combustion of gaseous fuel in the combustor with two consecutive combustion zones are presented. Each zone has its own burner: the first burner is traditional and located at the end of the flame tube, while the second burner is sequential and located downstream on side walls of the flame tube. Fuel combustion in the second zone occurs at a low oxygen content and high temperature. Zones with maximal CO values ​​are shown to be formed near the flame tube walls, while maximal NO~( x )concentrations are observed in the central zone of the flow recirculation. The penetration capacity of the fuel jets entering the second combustion zone was evaluated, and the jet trajectories in the blowing flow of hot gases in the first zone are shown. The results of optimization of the fuel distribution between two successive combustion zones, as well as the effect of the flow rate on the NO~( x )and CO formation at the outlet gas temperature of 1550–1700°C, are presented. The results were obtained by testing the model low-emission combustor at the test facility of the All-Russia Thermal Engineering Institute.
机译:这是关于在出口气体温度为1550–1700°C的两区燃烧室中的燃料-空气混合物中燃烧和燃烧的燃烧的实验研究和优化,以满足有害物质(NO〜(x)和CO)的第三篇论文排放。给出了在具有两个连续燃烧区的燃烧室中燃烧气体燃料的实验结果。每个区域都有自己的燃烧器:第一个燃烧器是传统燃烧器,位于火焰管的末端,而第二个燃烧器是连续燃烧器,位于火焰管侧壁的下游。在第二区域中的燃料燃烧在低氧含量和高温下发生。在火焰管壁附近形成了具有最大CO值的区域,而在流动再循环的中心区域则观察到了最大的NO〜(x)浓度。评估了进入第二燃烧区的燃料射流的穿透能力,并显示了在第一区中的热气吹流中的射流轨迹。给出了两个连续燃烧区之间的燃料分配的优化结果,以及在出口气体温度为1550–1700°C时,流量对NO〜(x)和CO形成的影响。通过在全俄罗斯热工学院的测试设施中对模型低排放燃烧室进行测试获得了结果。

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